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  1. Monolithic Silicon Light Sources

    Monolithic silicon light sources (LEDs and lasers) could have a significant impact when integrated on silicon chips. After a general introduction to...
    Philippe M. Fauchet in Silicon Photonics
    Chapter
  2. Monolithic Silicon Microphotonics

    The technology evolution of optical interconnection is driven by the distance × product required for a given link. As such optical fiber deployment...
    L. C. Kimerling, L. Dal Negro, ... M. R. Watts in Silicon Photonics
    Chapter
  3. Silicon Fundamentals for Photonics Applications

    The many and diverse approaches to materials science problems have greatly enhanced our ability to engineer the physical properties of...
    David J. Lockwood and Lorenzo Pavesi in Silicon Photonics
    Chapter
  4. Phase behavior of phytanyl-chained akylglycoside/water systems

    The aqueous phase behavior of novel alkylglycosides, AGs, that have a 3,7,11,15-tetramethylhexadecyl (phytanyl) group as their hydrophobic part was...
    Masakatsu Hato, Hiroyuki Minamikawa, ... Sanae Matsutani in Trends in Colloid and Interface Science XVI
    Conference paper
  5. About energy and electron transfer processes in C60 /phthalocyanine films

    In the present work absorption, photoluminescence excitation and emission spectra of fullerene C60, and a zinc derivative of phthalocyanine (ZnPc) in...
    H. D. Burrows, A. A. Kharlamov in Trends in Colloid and Interface Science XVI
    Conference paper
  6. Determining antioxidant distributions in model food emulsions: development of a new kinetic method based on the pseudophase model in micelles and opaque emulsions

    The mechanisms of lipid peroxidation and the distributions of antioxidants in emulsions are not fully understood, in a large part because...
    L. S. Romsted, J. Zhang in Trends in Colloid and Interface Science XVI
    Conference paper
  7. Methods and Instrumentation

    On the basis of the given brilliances of present-day synchrotron radiation sources one easily estimates that they should be ideally suited for...
    Chapter
  8. Coherent Elastic Nuclear Resonant Scattering

    In the field of x-ray diffraction, the intensity and the direction of scattered waves are determined by the properties of the individual scatterers...
    Chapter
  9. 5. Simulation of Active and Nonlinear Photonic Nano-Materials in the Finite-Difference Time-Domain (FDTD) Framework

    A numerical method is presented that unites three-dimensional finite-differnce time-domain (FDTD) computer simulations of active, nonlinear photonic...
    A. Klaedtke, J. Hamm, O. Hess in Computational Materials Science
    Chapter
  10. 13. Parallel Implementation Strategiesfor Algorithms from Scientific Computing

    Many applications from scientific computing are computationally intensive and can therefore benefit from a realization on a parallel or a distributed...
    T. Rauber, G. Rünger in Computational Materials Science
    Chapter
  11. Real-Space Renormalization and Energy-Level Statistics at the Quantum Hall Transition

    We review recent applications of the real-space renormalization group (RG) approach to the integer quantum Hall (QH) transition. The RG approach,...
    Rudolf A. Römer, Philipp Cain in Advances in Solid State Physics
    Chapter
  12. Evidence for a Metal-Insulator Transition in Overdoped Cuprates: New Raman Results

    Transport properties play a major role in the characterization of correlated metals such as the cuprates. The usual dc and optical conductivity...
    Francesca Venturini in Advances in Solid State Physics
    Chapter
  13. From Digital to Analogue Magnetoelectronics: Theory of Transport in Non-collinear Magnetic Nanostructures

    Magnetoelectronics is mainly digital, i.e. governed by up and down magnetizations. In contrast, analogue magnetoelectronics makes use of phenomena...
    Gerrit E.W. Bauer, Yaroslav Tserkovnyak, ... Arne Brataas in Advances in Solid State Physics
    Chapter
  14. Models for Food Webs

    Food webs are complex systems of many interacting biological species. After summarizing some of their properties, this contribution presents...
    Barbara Drossel in Advances in Solid State Physics
    Chapter
  15. Modeling of Metals and Metal Sponges via Embedded Particle Computer Simulation

    In this article we review the embedded atom method when adapted to study solid friction and the mechanical behavior of model metals. The method...
    Chapter
  16. Scale Invariance and Dynamic Phase Transitions in Diffusion-Limited Reactions

    Many systems that can be described in terms of diffusion-limited `chemical' reactions display non-equilibrium continuous transitions separating...
    Chapter
  17. High Critical Fields and Currents in Mechanically Alloyed MgB$_2$

    The combination of high critical fields Hc2 and irreversibility fields H^irr and a critical current density jc for example in thin films render MgB2...
    Jürgen Eckert, Olaf Perner, ... Ludwig Schultz in Advances in Solid State Physics
    Chapter
  18. Fractional Aharonov-Bohm Oscillations in a Kondo Correlated Few-Electron Quantum Ring

    We investigate a small quantum ring fabricated by local oxidation with an atomic force microscope. For strong tunnel coupling to the leads we observe...
    Ulrich F. Keyser, Claus Fühner, ... Max Bichler in Advances in Solid State Physics
    Chapter
  19. AC-Calorimetry at High Pressure and Low Temperature

    Recent developments of the ac-calorimetric technique adapted for the needs of high pressure experiments are discussed. A semi-quantitative...
    Heribert Wilhelm in Advances in Solid State Physics
    Chapter
  20. Hidden Pseudogap and Superconductivity in Electron Doped High-Temperature Superconductors

    The ground state of superconductors is characterized by the long range order of condensed Cooper-pairs. While this is the only order in conventional...
    Lambert Alff, Yoshiharu Krockenberger, ... Michio Naito in Advances in Solid State Physics
    Chapter
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